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Determination of gold nanoparticle shape from absorption spectroscopy and ellipsometry

机译:用吸收光谱法和椭偏法测定金纳米颗粒的形状

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Graphical abstract Display Omitted Highlights Determination of nanoparticle shape distribution from ellipsomertry and absorption spectroscopy. Introduction of new space to represent the shape distribution. Effective medium theory which takes into account the shape distribution of nanoparticles. Abstract A new methodology is developed to determine the shape distribution of gold nanoparticles (NPs) from optical spectroscopic measurements. Indeed, the morphology of Au colloids is deduced by fitting their absorption spectra with an effective medium theory which takes into account the nanoparticle shape distribution. The same procedure is applied to ellipsometric measurements recorded on photoresist films which contain Au NPs. Three spaces (L2, r2, P2) are introduced to interpret the NPs shape distribution. In the P2 space, the sphericity, the prolacity and the oblacity estimators are proposed to quantify the shape of NPs. The r2 space enables the determination of the NP aspect ratio distribution. The distributions determined from optical spectroscopy were found to be in very good agreement with the shape distributions obtained by transmission electron microscopy. We found that fitting absorption or ellipsometric spectra with an adequate effective medium theory, provides a robust tool for measuring the shape and concentration of metallic NPs.
机译: 图形摘要 < ce:simple-para id =“ spar0050” view =“ all” /> 省略显示 突出显示 < ce:para id =“ par0005” view =“ all”>纳米粒子形状分布的测定 介绍表示形状分布的新空间。 有效介质理论,其中考虑了纳米粒子的形状分布。 < / ce:list> 摘要 开发了一种新的方法,可以通过光谱测量确定金纳米颗粒(NP)的形状分布。确实,金胶体的形态是通过将吸收光谱与考虑了纳米粒子形状分布的有效介质理论相拟合而得出的。将相同的过程应用于记录在包含Au NP的光刻胶膜上的椭偏测量。三个空格(L 2 ,r 2 ,P 2 )用于解释NP的形状分布。在P 2 空间中,提出了球形度,近似度和隐蔽度估计量以量化NP的形状。 r 2 空间可以确定NP纵横比的分布。发现由光谱学确定的分布与通过透射电子显微镜获得的形状分布非常吻合。我们发现,使用适当的有效介质理论拟合吸收光谱或椭偏光谱,可为测量金属NP的形状和浓度提供强大的工具。

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